A dual origin for Bcr-Abl gene translocation/fusion as dynamics of synergism of the hematopoietic stem cell and hemangioblast in chronic myeloid leukemia

L. Agius
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引用次数: 3

Abstract

Contextual BCR-ABL tyrosine kinase over-activity determines in formulated fashion the emergence of proliferation and anti-apoptosis that arise largely as derived phenomena of otherwise homeostatic mechanisms of the c-ABL gene within hematopoietic stem cells and hemangioblasts in the bone marrow. The ability to suppress almost completely, both in terms of phenotype and cytogenetically, the myeloid cell line expansion by imatinib mesylate is indicative of a phenomenon that depends strictly on the transformed status of the cell of origin in the chronic myeloid leukemia process. It is with relevance to complex participation of the dynamics of the fused BCRABL protein product that contextual conditioning of the cells of origin of the gene translocation further motivates the dimensional expansion of the transformed myeloid cell clones to increasing proliferative rates, thus leading to blast crisis as eventual loss of differentiating potential.
Bcr-Abl基因易位/融合作为造血干细胞和成血管细胞在慢性髓性白血病中协同作用的动力学的双重起源
背景BCR-ABL酪氨酸激酶过度活性以制定的方式决定增殖和抗凋亡的出现,这主要是由于造血干细胞和骨髓中c-ABL基因的稳态机制衍生的现象。甲甲酸伊马替尼在表型和细胞遗传学方面几乎完全抑制髓系扩增的能力表明,在慢性髓系白血病过程中,这种现象严格依赖于起源细胞的转化状态。与融合的BCRABL蛋白产物的复杂动力学参与相关的是,基因易位的起源细胞的环境调节进一步激发了转化的髓细胞克隆的尺寸扩张,以增加增殖率,从而导致细胞危机,最终失去分化潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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